Predicting vapor liquid equilibria (VLE) of molecules governed by weak van der Waals (vdW) interactions using the first principles approach is a significant challenge. Due to the poor scaling of the post Hartree-Fock wave function theory with system size/basis functions, the Kohn-Sham density functional theory (DFT) is preferred for systems with a large number of molecules. However, traditional DFT cannot adequately account for medium to long range correlations which are necessary for modeling vdW interactions. Recent developments in DFT such as dispersion corrected models and nonlocal van der Waals functionals have attempted to address this weakness with a varying degree of success. In this work, we predict the VLE of argon and assess the ...
Gibbs ensemble Monte Carlo simulations were carried out to investigate the properties of a frozen-el...
AbstractIn this article techniques for including dispersion interactions within density functional t...
Van der Waals (vdW) interactions play an important role in the bonding of sparse biological matter. ...
Predicting vapor liquid equilibria (VLE) of molecules governed by weak van der Waals (vdW) interacti...
To capture the underlying chemistry and physics of a system on electronic structure platform, it is ...
A Helmholtz free energydensity functional is developed to describe the vapor-liquid interface of ass...
Efficient Monte Carlo algorithms are combined with the Quickstep energy routines of CP2K to develop ...
Fully a priori predictions are reported for the vapor-liquid equilibria (VLE) properties of Ar, Kr, ...
The present work attempts to assess and evaluate the performance of some new DFT methods in describi...
We investigate the accuracy provided by different treatments of the exchange and correlation effects...
Shear and bulk viscosities of liquid water and argon are evaluated from first-principles in the dens...
Second order Møller–Plesset perturbation theory at the complete basis set limit and diffusion quantu...
A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar stat...
We employed PBE and BLYP semi-local functionals and the van der Waals density functional of Dion et ...
Second order Møller–Plesset perturbation theory at the complete basis set limit and diffusion quantu...
Gibbs ensemble Monte Carlo simulations were carried out to investigate the properties of a frozen-el...
AbstractIn this article techniques for including dispersion interactions within density functional t...
Van der Waals (vdW) interactions play an important role in the bonding of sparse biological matter. ...
Predicting vapor liquid equilibria (VLE) of molecules governed by weak van der Waals (vdW) interacti...
To capture the underlying chemistry and physics of a system on electronic structure platform, it is ...
A Helmholtz free energydensity functional is developed to describe the vapor-liquid interface of ass...
Efficient Monte Carlo algorithms are combined with the Quickstep energy routines of CP2K to develop ...
Fully a priori predictions are reported for the vapor-liquid equilibria (VLE) properties of Ar, Kr, ...
The present work attempts to assess and evaluate the performance of some new DFT methods in describi...
We investigate the accuracy provided by different treatments of the exchange and correlation effects...
Shear and bulk viscosities of liquid water and argon are evaluated from first-principles in the dens...
Second order Møller–Plesset perturbation theory at the complete basis set limit and diffusion quantu...
A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar stat...
We employed PBE and BLYP semi-local functionals and the van der Waals density functional of Dion et ...
Second order Møller–Plesset perturbation theory at the complete basis set limit and diffusion quantu...
Gibbs ensemble Monte Carlo simulations were carried out to investigate the properties of a frozen-el...
AbstractIn this article techniques for including dispersion interactions within density functional t...
Van der Waals (vdW) interactions play an important role in the bonding of sparse biological matter. ...